首页> 美国卫生研究院文献>Toxicological Sciences >Linking Exposures of Particles Released From Nano-Enabled Products to Toxicology: An Integrated Methodology for Particle Sampling Extraction Dispersion and Dosing
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Linking Exposures of Particles Released From Nano-Enabled Products to Toxicology: An Integrated Methodology for Particle Sampling Extraction Dispersion and Dosing

机译:将纳米产品释放的颗粒物暴露与毒理学联系起来:一种用于颗粒采样提取分散和计量的综合方法

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摘要

Nano-enabled products (NEPs) represent a growing economic global market that integrates nanotechnology into our everyday lives. Increased consumer use and disposal of NEPs at their end of life has led to increased environmental, health and safety (EHS) concerns, due to the potential environmental release of constituent engineered nanomaterials (ENMs) used in the production of NEPs. Although, there is an urgent need to assess particulate matter (PM) release scenarios and potential EHS implications, no current standardized methodologies exist across the exposure-toxicological characterization continuum. Here, an integrated methodology is presented, that can be used to sample, extract, disperse and estimate relevant dose of life cycle-released PM (LCPM), for in vitro and in vivo toxicological studies. The proposed methodology was utilized to evaluate two “real world” LCPM systems simulating consumer use and disposal of NEPs. This multi-step integrated methodology consists of: (1) real-time monitoring and sampling of size fractionated LCPM; (2) efficient extraction of LCPM collected on substrates using aqueous or ethanol extraction protocols to ensure minimal physicochemical alterations; (3) optimized LCPM dispersion preparation and characterization; (4) use of dosimetric techniques for in vitro and in vivo toxicological studies. This comprehensive framework provides a standardized protocol to assess the release and toxicological implications of ENMs released across the life cycle of NEPs and will help in addressing important knowledge gaps in the field of nanotoxicology.
机译:纳米产品(NEP)代表了一个不断发展的全球经济市场,该市场将纳米技术整合到了我们的日常生活中。由于在NEP生产中使用的成分工程纳米材料(ENM)可能释放环境,因此消费者在NEP寿命结束时使用和处置的增加导致对环境,健康和安全(EHS)的关注增加。尽管迫切需要评估颗粒物(PM)释放情景和潜在的EHS隐患,但是在暴露-毒理学表征连续体中没有当前的标准化方法。在这里,提出了一种综合的方法学,可用于采样,提取,分散和估计生命周期释放的PM(LCPM)的相关剂量,用于体外和体内毒理学研究。拟议的方法被用来评估模拟消费者使用和处置NEP的两个“现实世界” LCPM系统。这种多步骤的集成方法包括:(1)实时监控和采样分级LCPM; (2)使用水或乙醇提取方案有效提取底物上收集的LCPM,以确保最小的理化变化; (3)优化的LCPM分散体的制备和表征; (4)使用剂量学技术进行体外和体内毒理学研究。这个全面的框架提供了一个标准化协议,以评估在NEP的整个生命周期中释放的ENM的释放和毒理学意义,并将有助于解决纳米毒理学领域的重要知识空白。

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